Consider the Haber-Bosch process for the synthesis of ammonia from its elements. Calculate the theoretical yield in moles NH, from the complete reaction of 59.8 grams N, in the presence of excess H, gas according to the following balanced chemical equation: N₂(g) + 3 H₂(g) → 2 NH,(g)

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Consider the Haber-Bosch process for the synthesis of ammonia from its elements.
Calculate the theoretical yield in moles NH, from the complete reaction of 59.8
grams N₂ in the presence of excess H₂ gas according to the following balanced
chemical equation:
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Transcribed Image Text:Aktiv Chemistry ← → C shift tab STARTING AMOUNT caps lock + esc control https://app.101edu.co ! Q X A T option Aktiv Chemistry N 2 W S #3 X 20 F3 H command 1.01 E Consider the Haber-Bosch process for the synthesis of ammonia from its elements. Calculate the theoretical yield in moles NH, from the complete reaction of 59.8 grams N₂ in the presence of excess H₂ gas according to the following balanced chemical equation: D ADD FACTOR + x( ) 2 $ 4 17.04 C g/mol N₂ POD F4 28.02 R F do 5 % -> N₂(g) + 3 H₂(g) →→→ 2NH₂(g) 2.13 g N₂ F5 V 7.04 Question 9 of 17 T G 59.8 g/mol NH, 14.01 <C MacBook Air F6 Y 8.54 B gNH & 7 ANSWER H 3 Ad F7 mol NH U 145 N * 00 8 4.27 J DII F8 RESET 5 3.52 mol N₂ - M 72.7 9 K 1 DD F9 O L F10 P command V I F11 { + 11 [ ? option OL Paused F12 } 1 Submit delete ⠀ return shift
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